toyota u140 automatic transmission

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TOYOTA/ LEXUS U150/ U250 TOYOTA/LEXUS U150/U250 PRELIMINARY INFORMATION Presented to you by Wayne Colonna Automatic Transmission Service

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Filed Under (Toyota Manuals) by admin on 19-09-2011

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Starting at the beginning of production for the 2002 model year for Lexus and 2004 for Toyota, a spin-off of the U140/U240 Four speed transaxle, designated as the U150/U250 series was born. This transmission is classified as a 5 speed transmission, although it has 6 ratio’s possible in the Drive position. The U150/250 is very similar to it’s smaller brother, the U140, and actually uses some of the same parts. This Transaxles shift points, and shift feel are electronically controlled by a Powertrain Control Module. This is accomplished by the PCM monitoring engine load and adjusting solenoid duty cycle to match pressure rise and shift feel. The PCM also monitors the turbine and output speed sensors to calculate gear ratio and the Transmission Range Sensor for gear selection.

Automatic Transmission/ Transaxle Fluid Level Inspection Temperature Rang es

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Filed Under (Toyota Manuals) by admin on 12-10-2011

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For vehicles equipped witha transmission requiring the use of the overflow type automatic transmission fluid (ATF) inspection process, the A TF must be withinaspecific temperature range for accurate fluid level inspection. Inspecting the A TF outside of the specified temperature range may result in incorrectA TF fluid levels and could lead to shift quality, M.I.L. “ON”, and/or transmission damage issues. Please seethe information in this bulletin for updated A TF level inspection temperature ranges. HINT For additional information including animations and video illustrations, please seethe Technical Training course E076: “Toyota ATF Level Inspection”. NOTE Please see TSB No. TC 010-07, “World Standard Automatic Transmission Fluid”, for important tips when working with A TFWS. ©2008 ToyotaMotor Sales, USA Page 1of3
T-SB-0129-08 July9,2008 Page 2of3 Automatic Transmission/Transaxle Fluid Level Inspection Temperature Ranges Warranty Information OP CODE DESCRIPTION TIME OFP T1 T2 N/A Not Applicable to Warranty – - — Parts Information PREVIOUS PART NUMBER CURRENT PART NUMBER PART NAME QTY 00289-ATFWS Same ATFWS As needed Required Tools&Equipment

A750 Transmission Solenoid Identification Automatic Transmission/ Transaxle

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Filed Under (Toyota Manuals) by admin on 19-09-2011

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Provided below isachartlisting the Repair Manual name of each solenoid used in the A750 transmission, as well as the part name description provided in the electronic parts catalog. REPAIR MANUAL SOLENOID NAME PARTS CATALOGP ART DESCRIPTION S1 3WayTransmission Solenoid S2 Transmission Solenoid#3 SL1 Clutch Control Solenoid#1 SL2 Clutch Control Solenoid#2 SLT Line Pressure Control Solenoid SLU Lock UpControl Solenoid SR

AUTOMATIC TRANSMISSION FLUID (ATF) APPLICATION GUIDE

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Filed Under (Toyota Manuals) by admin on 20-09-2011

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With so many automatic transmission fluids, it’s hard to choose the one best-suited for each vehicle. Beginning in 2007, there will be several changes to the way we look at transmission fluids. Products meeting current DEXRON®-III /MERCON® specifications will no longer be officially licensed by GM and Ford. However, products meeting these specifications will still be available – packaged as Valvoline® DEX/MERC and Valvoline’s MaxLife® DEX/MERC transmission fluids. The DEX/MERC fluids are recommended for GM, Ford and many import vehicles, 2005 and older. MERCON®V will also be compatible for Ford vehicles, 1996 and newer. GM has introduced DEXRON®-VI -a new, full-synthetic transmission fluid for GM vehicles and select imports, 2006 and newer. It is also backwards compatible for older GM vehicles. Valvoline now offers DEXRON®- VI fluid, officially licensed and approved by General Motors

New Automatic Transmission for Motorcycles Human-Friendly Transmission

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Filed Under (Honda) by admin on 18-12-2011

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High-pressure fluid flow The engine rotates the pump swash plate, which has a gear mechanism. The rotating swash plate pushes the pump pistons to increase the pressure on the hydraulic fluid and feed it to the high-pressure annular chamber. The high- pressure fluid is then fed to the oil motor piston chamber where it pushes the pistons forward, which then push the motor swash plate. Power Fluid flow from pump to motor Fluid flow from motor to pump Low-pressure fluid flow The lower-pressure hydraulic fluid returns to the pump through the low-pressure annular chamber. In this way, the fluid circulates between the pump and the motor. Movement of distributor valves and pistons The distributor valves play an important role in fluid circulation. The valves are placed both in the oil pump and motor. When the pump pistons move to the compression side, the valves connect the piston chamber and the high- pressure chamber. When the pump pistons move to the expansion side, the valves allow a connection between the piston chamber and the low-pressure chamber. The valve in the oil motor moves opposite to its counterpart in the pump, ensuring the circulation of fluid within the system

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